The present invention relates to a gap-type overhead transmission line and its manufacturing method. and more particularly to an overhead transmission line configured to have a gap between a steel core and a conductor and its manufacturing method.
Generally, an overhead transmission line such as an overhead power cable, an overhead branch line and OPGW (Optical Ground Wire) is constructed using electric poles or transmission towers, and its temperature is changed depending on external environments such as atmospheric temperature, wind and solar light, and current flowing through the line. Such temperature change causes contraction and expansion of the line, which results in change of sag of the overhead transmission line. Thus, considering the sag of the overhead transmission line, a tension between transmission towers is controlled or an electric spacing distance from the ground is determined. That is to say, a maximum allowable current of an overhead transmission line is limited due to the sag of the line.
In order to decrease or restrain sag of the overhead transmission line, there are used two methods in brief: namely LTACSR (Loose Type Aluminum Conductor Steel Reinforced) and GTACSR (Gap Type Aluminum Conductor Steel Reinforced).
The loose-type overhead transmission line is configured so that common aluminum cable steel reinforced is prepared and then a gap is mechanically formed between the steel core and the aluminum strand wire during installation so as to share a tension with the steel core. In addition, the gap-type overhead transmission line is configured so that a gap is formed between the steel core and the aluminum strand wire when the line is produced.
Referring to
Referring to
The present invention is designed in consideration of the above problems, and therefore it is an object of the invention to provide a gap-type overhead transmission line configured so that a gap is formed using a sublimate material between a steel core and a conductor, and its manufacturing method.
In order to accomplish the above object, the present invention provides a gap-type overhead transmission line, which includes a steel core member; a conductor layer positioned to surround the steel core member and having at least one strand wire aggregated therein; and a coating layer interposed in a solid state between the steel core member and the conductor layer so as to surround the steel core member, the coating layer including a material that is sublimated after the conductor layer is stranded so as to form a predetermined gap between the steel core member and the conductor layer.
Preferably, the coating layer has a thickness of 0.1 mm to 10 mm.
Preferably, the coating layer includes naphthalene, dry ice or ice.
Preferably, a loose rate of the steel core member and the conductor layer is in the range of 0.1 to 0.5%.
In another aspect of the present invention, there is also provided a method for manufacturing a gap-type overhead transmission line, which includes (a) providing a steel core member; (b) forming a coating layer of a predetermined thickness with a sublimate material so as to surround the steel core member; (c) stranding a conductor layer having at least one strand wire aggregated therein around the coating layer; and (d) forming a predetermined gap between the steel core member and the conductor layer by means of phase change of the coating layer.
Preferably, the sublimate material includes naphthalene, dry ice or ice.
Preferably, the coating layer has a thickness of 0.1 mm to 10 mm.
Preferably, in the step (c), a preformed strand wire is stranded.
Preferably, after the step (d), a loose rate of the steel core member and the conductor layer is in the range of 0.1 to 0.5%.
Hereinafter, a preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.
First, as shown in
Subsequently, as shown in
Then, as shown in
If a predetermined time passes after the above processes, the sublimate material in the coating layer 40 disappears due to phase change, and a gap G is formed between the steel core member 30 and the conductor layer 50 as much as an exhausted amount of the coating layer 40, as shown in
A loose rate of the overhead transmission line 100 formed as mentioned above (which is defined as a length of surplus conductor in comparison to the steel core) is preferably in the range of 0.1% to 0.5%.
If the loose rate is less than 0.1%, sag of the overhead transmission line caused by its looseness is not effectively prevented. If the loose rate is greater than 0.5%, a birdcage phenomenon (a phenomenon in which strand wires become wider like a birdcage when gaps between strand wire layers are great) may occurs during stranding or installation.
As described above, the gap-type overhead transmission line and its manufacturing method according to the present invention may reduce or restrain sag of an overhead transmission line by forming a gap using a coating layer made of sublimate material between a steel core member and a conductor layer, and thus a transmission capacity of the overhead transmission line may be increased.
In addition, since a tension is not previously applied to the steel core member or the conductor layer, a loose rate is not exhausted after wire manufacturing or during installation. Moreover, after the coating layer is formed, there is no need of addition process in order to form a gap, so it is possible to increase a working speed and prevent increase of a product cost.
Number | Date | Country | Kind |
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10-2005-0020708 | Mar 2005 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/KR2006/000081 | 1/9/2006 | WO | 00 | 5/18/2007 |